3Dプリンタ技術を用いた純タングテン製211At核医学治療評価用コリメータの開発
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| Published in | RADIOISOTOPES Vol. 71; no. 2; pp. 141 - 151 |
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| Main Authors | , , , , , , , |
| Format | Journal Article |
| Language | English |
| Published |
公益社団法人 日本アイソトープ協会
15.07.2022
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| Subjects | |
| Online Access | Get full text |
| ISSN | 0033-8303 1884-4111 |
| DOI | 10.3769/radioisotopes.71.141 |
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| Author | 大貫, 和信 柳下, 淳 藤井, 博史 渡辺, 伸 桂川, 美穂 薮, 悟郎 高橋, 忠幸 武田, 伸一郎 |
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| Author_xml | – sequence: 1 fullname: 柳下, 淳 organization: 東京大学カブリ数物連携宇宙研究機構 – sequence: 1 fullname: 高橋, 忠幸 organization: 東京大学カブリ数物連携宇宙研究機構 – sequence: 1 fullname: 桂川, 美穂 organization: 東京大学カブリ数物連携宇宙研究機構 – sequence: 1 fullname: 薮, 悟郎 organization: 東京大学カブリ数物連携宇宙研究機構 – sequence: 1 fullname: 大貫, 和信 organization: 国立がん研究センター機能診断開発分野 – sequence: 1 fullname: 武田, 伸一郎 organization: 東京大学カブリ数物連携宇宙研究機構 – sequence: 1 fullname: 藤井, 博史 organization: 国立がん研究センター機能診断開発分野 – sequence: 1 fullname: 渡辺, 伸 organization: 宇宙開発研究機構宇宙科学研究所 |
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| Copyright | Japan Radioisotope Association 2022. This is an open access article distributed under the Creative Commons Attribution 4.0 International (CC BY 4.0) License (https://creativecommons.org/licenses/by/4.0/) |
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| DOI | 10.3769/radioisotopes.71.141 |
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| References | 7) 藤井博史,梅田 泉,小島良紀,SPECT技術を用いた小動物イメージング,RADIOISOTOPES, 57, 219–232 (2008 13) Takahashi, T. and Watanabe, S., Recent progress in CdTe and CdZnTe detectors, IEEE Trans. Nucl. Sci., 48, 950–959 (2001 4) Herrmann, K., Schwaiger, M., Lewis, J. S., Solomon, S. B., et al., Radiotheranostics: a roadmap for future development, Lancet Oncol., 21, e146–e156 (2020 6) Takeda, S., Katsuragawa, M., Orita, T., Moriyama, F., et al., A high-resolution CdTe imaging detector with multi-pinhole optics for in-vivo molecular imaging, Nucl. Instrum. Methods Phys. Res. A, 912, 57–60 (2018 2) Parker, C., Nilsson, S., Heinrich, D., Helle, S. I., et al.; ALSYMPCA Investigators, Alpha emitter radium-223 and survival in metastatic prostate cancer, N. Engl. J. Med., 369, 213–223 (2013 5) Turkington, T. G., Zalutsky, M. R., Jaszczak, R. J., Garg, P. K., et al., Measuring astatine-211 distributions with SPECT, Phys. Med. Biol., 38, 1121–1130 (1993 10) Watabe, T., Kaneda-Nakashima, K., Liu, Y., Shirakami, Y., et al., Enhancement of 211At uptake via the sodium iodide symporter by the addition of ascorbic acid in targeted alpha-therapy of thyroid cancer, J. Nucl. Med., 60, 1301–1307 (2019 11) Inoue, Y., Abe, Y., Kikuchi, K., Matsunaga, K., et al., Correction of collimator-dependent differences in the heart-to-mediastinum ratio in 123I-metaiodobenzylguanidine cardiac sympathetic imaging: Determination of conversion equations using point-source imaging, J. Nucl. Cardiol., 24, 1725–1736 (2017 9) Cherry, S. R., Sorenson, J. A. and Phelps, M. E., The Gamma camera, performance characteristics Physics in Nuclear Medicine, pp. 209–231, Elsevier, Philadelphia (2012 8) Fujii, H., Idoine, J. D., Gioux, S., Accorsi, R., et al., Optimization of coded aperture radioscintigraphy for sentinel lymph node mapping, Mol. Imaging Biol., 14, 173–182 (2012 3) Targeted Alpha Therapy Working Group, Parker, C., Lewington, V., Shore, N., et al.; Targeted alpha therapy, an emerging class of cancer agents: a review, JAMA Oncol., 4, 1765–1772 (2018 1) Biko, J., Reiners, C., Kreissl, M. C., Verburg, F. A., et al., Favourable course of disease after incomplete remission on 131I therapy in children with pulmonary metastases of papillary thyroid carcinoma: 10 years follow-up, Eur. J. Nucl. Med. Mol. Imaging, 38, 651–655 (2011 12) 藤井博史,大貫和信,羽場宏光,吉本光喜,他,生物医学研究機関におけるアルファ線放出核種の放射能測定,JSMI Report, 14, 3–11 (2021 |
| References_xml | – reference: 2) Parker, C., Nilsson, S., Heinrich, D., Helle, S. I., et al.; ALSYMPCA Investigators, Alpha emitter radium-223 and survival in metastatic prostate cancer, N. Engl. J. Med., 369, 213–223 (2013) – reference: 8) Fujii, H., Idoine, J. D., Gioux, S., Accorsi, R., et al., Optimization of coded aperture radioscintigraphy for sentinel lymph node mapping, Mol. Imaging Biol., 14, 173–182 (2012) – reference: 7) 藤井博史,梅田 泉,小島良紀,SPECT技術を用いた小動物イメージング,RADIOISOTOPES, 57, 219–232 (2008) – reference: 10) Watabe, T., Kaneda-Nakashima, K., Liu, Y., Shirakami, Y., et al., Enhancement of 211At uptake via the sodium iodide symporter by the addition of ascorbic acid in targeted alpha-therapy of thyroid cancer, J. Nucl. Med., 60, 1301–1307 (2019) – reference: 4) Herrmann, K., Schwaiger, M., Lewis, J. S., Solomon, S. B., et al., Radiotheranostics: a roadmap for future development, Lancet Oncol., 21, e146–e156 (2020) – reference: 3) Targeted Alpha Therapy Working Group, Parker, C., Lewington, V., Shore, N., et al.; Targeted alpha therapy, an emerging class of cancer agents: a review, JAMA Oncol., 4, 1765–1772 (2018) – reference: 5) Turkington, T. G., Zalutsky, M. R., Jaszczak, R. J., Garg, P. K., et al., Measuring astatine-211 distributions with SPECT, Phys. Med. Biol., 38, 1121–1130 (1993) – reference: 9) Cherry, S. R., Sorenson, J. A. and Phelps, M. E., The Gamma camera, performance characteristics Physics in Nuclear Medicine, pp. 209–231, Elsevier, Philadelphia (2012) – reference: 1) Biko, J., Reiners, C., Kreissl, M. C., Verburg, F. A., et al., Favourable course of disease after incomplete remission on 131I therapy in children with pulmonary metastases of papillary thyroid carcinoma: 10 years follow-up, Eur. J. Nucl. Med. Mol. Imaging, 38, 651–655 (2011) – reference: 6) Takeda, S., Katsuragawa, M., Orita, T., Moriyama, F., et al., A high-resolution CdTe imaging detector with multi-pinhole optics for in-vivo molecular imaging, Nucl. Instrum. Methods Phys. Res. A, 912, 57–60 (2018) – reference: 12) 藤井博史,大貫和信,羽場宏光,吉本光喜,他,生物医学研究機関におけるアルファ線放出核種の放射能測定,JSMI Report, 14, 3–11 (2021) – reference: 11) Inoue, Y., Abe, Y., Kikuchi, K., Matsunaga, K., et al., Correction of collimator-dependent differences in the heart-to-mediastinum ratio in 123I-metaiodobenzylguanidine cardiac sympathetic imaging: Determination of conversion equations using point-source imaging, J. Nucl. Cardiol., 24, 1725–1736 (2017) – reference: 13) Takahashi, T. and Watanabe, S., Recent progress in CdTe and CdZnTe detectors, IEEE Trans. Nucl. Sci., 48, 950–959 (2001) |
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| Title | 3Dプリンタ技術を用いた純タングテン製211At核医学治療評価用コリメータの開発 |
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